Quantitative determination of gap junction intercellular communication by scrape loading and image analysis.

H Opsahl, E Rivedal
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引用次数: 63

Abstract

Gap junction intercellular communication (GJIC) consists of intercellular exchange of low molecular weight molecules. Chemically induced alterations of this communication have been suggested to result in abnormal cell growth and tumour promotion. Several in vitro assays have been developed to determine the effect of chemicals on gap junction communication in cultured cells. The scrape loading dye transfer technique is based on studying the transfer of the fluorescent dye Lucifer Yellow in cells where the dye is loaded through a cut in the cell monolayer. This technique is rapid and relatively uncomplicated, but has only been used to qualitatively demonstrate communication, due to lack of an appropriate method for quantification of the dye spreading. We show here that analysis of digital fluorescence images of cells scrape loaded with Lucifer Yellow can be used for quantitative determination of GJIC. We have analysed the images both by means of distance of diffusion of the dye in the cell monolayer, as well as by area of dye-coupled cells. The results are consistent with that obtained using microinjection of Lucifer Yellow and the method offers a simple way for quantitative determination of GJIC.

用刮痕加载和图像分析定量测定间隙连接细胞间通讯。
间隙连接细胞间通讯(GJIC)是由低分子量分子的细胞间交换组成的。化学诱导的这种通讯的改变已被认为会导致异常细胞生长和肿瘤促进。已经开发了几种体外试验来确定化学物质对培养细胞中间隙连接通信的影响。刮载染料转移技术是基于研究荧光染料路西法黄在细胞中的转移,染料通过细胞单层的切口加载。该技术快速且相对简单,但由于缺乏一种适当的方法来定量染料扩散,因此仅用于定性地演示通信。我们在这里表明,分析带有路西法黄的细胞的数字荧光图像可以用于定量测定GJIC。我们用染料在细胞单层中的扩散距离和染料偶联细胞的面积对图像进行了分析。结果与显微注射路西法黄的测定结果一致,为GJIC的定量测定提供了一种简便的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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